CN118649964A - Hydraulic pipeline flushing device - Google Patents

Hydraulic pipeline flushing device Download PDF

Info

Publication number
CN118649964A
CN118649964A CN202411136653.2A CN202411136653A CN118649964A CN 118649964 A CN118649964 A CN 118649964A CN 202411136653 A CN202411136653 A CN 202411136653A CN 118649964 A CN118649964 A CN 118649964A
Authority
CN
China
Prior art keywords
hydraulic pipeline
mounting
hydraulic
mounting seat
flushing device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202411136653.2A
Other languages
Chinese (zh)
Inventor
邓长东
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shaanxi Fushite Hydraulic Co ltd
Original Assignee
Shaanxi Fushite Hydraulic Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shaanxi Fushite Hydraulic Co ltd filed Critical Shaanxi Fushite Hydraulic Co ltd
Priority to CN202411136653.2A priority Critical patent/CN118649964A/en
Publication of CN118649964A publication Critical patent/CN118649964A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto
    • B08B9/02Cleaning pipes or tubes or systems of pipes or tubes
    • B08B9/027Cleaning the internal surfaces; Removal of blockages
    • B08B9/04Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes
    • B08B9/043Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes moved by externally powered mechanical linkage, e.g. pushed or drawn through the pipes
    • B08B9/0433Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes moved by externally powered mechanical linkage, e.g. pushed or drawn through the pipes provided exclusively with fluid jets as cleaning tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C1/00Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating
    • B05C1/04Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length
    • B05C1/06Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length by rubbing contact, e.g. by brushes, by pads
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto
    • B08B9/02Cleaning pipes or tubes or systems of pipes or tubes
    • B08B9/027Cleaning the internal surfaces; Removal of blockages
    • B08B9/04Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes
    • B08B9/043Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes moved by externally powered mechanical linkage, e.g. pushed or drawn through the pipes
    • B08B9/047Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes moved by externally powered mechanical linkage, e.g. pushed or drawn through the pipes the cleaning devices having internal motors, e.g. turbines for powering cleaning tools
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B23/00Heating arrangements
    • F26B23/04Heating arrangements using electric heating

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • General Engineering & Computer Science (AREA)
  • Cleaning In General (AREA)

Abstract

The invention discloses a hydraulic pipeline flushing device, which relates to the technical field of pipeline cleaning and comprises a first mounting seat and a second mounting seat, wherein the first mounting seat and the second mounting seat are hinged through a stabilizing plate, one end of the first mounting seat far away from the second mounting seat is rotatably provided with a mounting assembly, the edge position of the mounting assembly is provided with spray heads at equal intervals along the circumferential direction, the mounting assembly is used for driving a plurality of spray heads to rotate on the inner wall of a hydraulic pipeline, and the plurality of spray heads clean the inner wall of the hydraulic pipeline. According to the invention, through the mutual matching among the first installation seat, the installation assembly and the spray head, the spray head is installed at the edge position of the installation assembly at an acute angle, so that when the inside of the hydraulic pipeline is cleaned, the drive motor drives the spray head to rotate in the hydraulic pipeline through the rotating shell, and then the water flow sprayed out of the spray head rotates in a spiral shape on the inner wall of the hydraulic pipeline, so that the cleaning area of liquid on the inner wall of the hydraulic pipeline is increased, and the cleaning effect on the inside of the hydraulic pipeline is improved.

Description

一种液压管道冲洗装置Hydraulic pipeline flushing device

技术领域Technical Field

本发明涉及管道清洗技术领域,尤其涉及一种液压管道冲洗装置。The invention relates to the technical field of pipeline cleaning, and in particular to a hydraulic pipeline flushing device.

背景技术Background Art

液压管道是一种用来传递液压压力的管道,‌它包括硬管和软管两种类型。‌硬管通常是无缝钢管,‌而软管则是由分层的钢丝网和橡胶一起弯曲形成的,‌经常被用于需要弯曲变化的部位。‌液压管道可以根据运输介质的流量大小和液压管的不同压力来选择不同的直径和压力等级,‌以适应特定的应用需求。Hydraulic pipe is a pipe used to transmit hydraulic pressure. It includes two types: hard pipe and soft pipe. Hard pipe is usually seamless steel pipe, while soft pipe is formed by bending layered wire mesh and rubber together, and is often used in parts that need to bend and change. Hydraulic pipe can choose different diameters and pressure grades according to the flow rate of the transport medium and the different pressures of the hydraulic pipe to meet specific application requirements.

对液压管道进行清洗是非常重要的,‌主要原因包括防止杂质进入液压系统、‌维持系统性能、‌延长元件寿命以及提高系统可靠性,液压油管内部如果存在污垢和杂质,‌这些杂质可能随着液压油的流动进入液压系统的其他部分,‌如阀门、‌液压缸等。‌这些杂质会导致元件的磨损和堵塞,‌影响系统的正常工作,液压油中的颗粒物会导致油滤堵塞、‌密封件磨损和元件表面的疲劳磨损,‌从而降低液压系统的工作效率和精度。‌保持液压油管的清洁度可以减少这些颗粒物的影响,‌维持系统的性能,液压油中的杂质和颗粒物会加速液压元件的磨损,‌缩短其使用寿命。‌保持液压油管的清洁度可以减少元件的磨损,‌延长其使用寿命,‌减少维修和更换的成本,液压油管的清洁度对于系统的可靠性至关重要。It is very important to clean the hydraulic pipeline. The main reasons include preventing impurities from entering the hydraulic system, maintaining system performance, extending component life, and improving system reliability. If there is dirt and impurities inside the hydraulic oil pipe, these impurities may enter other parts of the hydraulic system, such as valves, hydraulic cylinders, etc., with the flow of hydraulic oil. These impurities will cause wear and blockage of components, affecting the normal operation of the system. Particles in the hydraulic oil will cause oil filter blockage, seal wear and fatigue wear on the surface of components, thereby reducing the working efficiency and accuracy of the hydraulic system. Keeping the cleanliness of the hydraulic oil pipe can reduce the impact of these particles and maintain the performance of the system. Impurities and particles in the hydraulic oil will accelerate the wear of hydraulic components and shorten their service life. Keeping the cleanliness of the hydraulic oil pipe can reduce the wear of components, extend their service life, and reduce the cost of maintenance and replacement. The cleanliness of the hydraulic oil pipe is crucial to the reliability of the system.

根据中国专利公告号:CN215466765U公开了一种管道内壁清理装置,包括:驱动机构和清理机构;所述驱动机构包括涡轮基体,沿着所述涡轮基体的圆周方向均匀设置有多个导流片,多个所述导流片沿着所述涡轮基体的延伸方向呈螺旋设置,任意相邻的两个所述导流片之间形成螺旋导流槽;所述清理机构与所述涡轮基体的一端连接,所述涡轮基体和所述清理机构用于容置于管道内部,且沿着所述清理机构的圆周方向的外侧壁与所述管道内壁抵接,所述涡轮基体用于通过所述导流槽在所述管道内部液体动力驱动下转动,以带动所述清理机构相对于所述管道转动,以使所述清理机构对所述管道内壁进行清理。通过将清理机构和驱动机构伸入至管道内部,并且在涡轮基体的一端输送液体,其中涡轮基体通过导流槽在管道内部液体动力驱动下进行转动,从而能够带动清理机构相对于管道转动,利用清理机构能够对管道内壁进行清理,但是在使用上述装置时,利用液体带动清理机构相对于管道的转动效果较差,进而清理机构在管道内部的清理效果较差。According to Chinese patent announcement number: CN215466765U, a pipeline inner wall cleaning device is disclosed, including: a driving mechanism and a cleaning mechanism; the driving mechanism includes a turbine base, and a plurality of guide vanes are evenly arranged along the circumferential direction of the turbine base, and the plurality of guide vanes are spirally arranged along the extension direction of the turbine base, and a spiral guide groove is formed between any two adjacent guide vanes; the cleaning mechanism is connected to one end of the turbine base, and the turbine base and the cleaning mechanism are used to be accommodated inside the pipeline, and the outer side wall along the circumferential direction of the cleaning mechanism abuts against the inner wall of the pipeline, and the turbine base is used to rotate under the driving force of the liquid inside the pipeline through the guide groove, so as to drive the cleaning mechanism to rotate relative to the pipeline, so that the cleaning mechanism cleans the inner wall of the pipeline. The cleaning mechanism and the driving mechanism are extended into the interior of the pipeline, and liquid is transported at one end of the turbine base, wherein the turbine base is driven to rotate by the liquid power inside the pipeline through the guide groove, thereby driving the cleaning mechanism to rotate relative to the pipeline, and the inner wall of the pipeline can be cleaned by the cleaning mechanism. However, when using the above device, the effect of using liquid to drive the cleaning mechanism to rotate relative to the pipeline is poor, and thus the cleaning effect of the cleaning mechanism inside the pipeline is poor.

所以,在使用上述装置时,在管道内部的转动效果较差,进而对管道内部的清理效果较差。Therefore, when the above device is used, the rotation effect inside the pipeline is poor, and thus the cleaning effect on the inside of the pipeline is poor.

发明内容Summary of the invention

为了达到上述目的,本发明是通过以下技术方案实现的:In order to achieve the above object, the present invention is achieved through the following technical solutions:

一种液压管道冲洗装置,包括第一安装座和第二安装座,第一安装座和第二安装座之间通过稳定板铰接连接,第一安装座远离第二安装座的一端转动安装有安装组件,安装组件的边缘位置处沿圆周方向等间距设置有喷头,安装组件用于带动多个喷头在液压管道内壁转动,多个喷头对液压管道内壁清洗,安装组件包括固接在第一安装座内部的驱动电机,驱动电机的动力输出端设置有传动杆,传动杆上滑动连接有传动组件,第一安装座的端部转动安装有转动壳,且传动杆延伸至转动壳内部,转动壳的内部转动安装有转动盘,第二安装座远离第一安装座的一端转动安装有安装盘,安装盘的边缘位置处等间距设置有烘干组件,安装盘带动烘干组件对液压管道内壁进行烘干,安装盘边缘位置处沿圆周方向等间距设置有滚刷筒,安装盘带动滚刷筒对液压管道内壁进行涂抹修复材料。A hydraulic pipeline flushing device comprises a first mounting seat and a second mounting seat, the first mounting seat and the second mounting seat are hingedly connected by a stabilizing plate, the first mounting seat is rotatably mounted on one end away from the second mounting seat, and nozzles are arranged at equal intervals in a circumferential direction at the edge position of the mounting seat, the mounting seat is used to drive multiple nozzles to rotate on the inner wall of the hydraulic pipeline, and the multiple nozzles clean the inner wall of the hydraulic pipeline, the mounting seat comprises a driving motor fixedly connected to the inside of the first mounting seat, a transmission rod is arranged at the power output end of the driving motor, and a transmission assembly is slidably connected to the transmission rod, a rotating shell is rotatably mounted on the end of the first mounting seat, and the transmission rod extends to the inside of the rotating shell, and a rotating disk is rotatably mounted inside the rotating shell, and a mounting disk is rotatably mounted on one end of the second mounting seat away from the first mounting seat, a drying assembly is arranged at equal intervals at the edge position of the mounting disk, and the mounting disk drives the drying assembly to dry the inner wall of the hydraulic pipeline, and a roller brush cylinder is arranged at equal intervals in the circumferential direction at the edge position of the mounting disk, and the mounting disk drives the roller brush cylinder to apply repair material to the inner wall of the hydraulic pipeline.

进一步优选为,安装组件还包括:Further preferably, the installation component further comprises:

电动气缸,数量为多个,沿圆周方向等间距固接在转动壳内部,电动气缸用于带动传动组件在传动杆上移动。There are multiple electric cylinders, which are fixed inside the rotating shell at equal intervals along the circumferential direction. The electric cylinders are used to drive the transmission component to move on the transmission rod.

连接杆,数量为多个,沿圆周方向等间距铰接安装在转动盘的边缘位置处。There are multiple connecting rods, which are hingedly installed at the edge of the rotating disk at equal intervals along the circumferential direction.

安装块,数量为多个,沿圆周方向等间距铰接安装在转动壳的边缘位置处,连接杆的顶端铰接连接在安装块的底部,喷头安装在安装块上。There are multiple mounting blocks, which are hingedly mounted at the edge of the rotating shell at equal intervals along the circumferential direction. The top end of the connecting rod is hingedly connected to the bottom of the mounting block, and the nozzle is mounted on the mounting block.

清洁刷,固接在转动壳边缘远离安装块的一侧。A cleaning brush is fixedly connected to a side of the edge of the rotating shell away from the mounting block.

进一步优选为,转动壳的边缘位置处设置有与安装块位置相对应活动轨迹相适配的开口。Further preferably, an opening adapted to a movable track corresponding to the position of the mounting block is provided at the edge of the rotating shell.

进一步优选为,传动组件包括有:Further preferably, the transmission assembly includes:

滑动轴,滑动连接在传动杆上。The sliding shaft is slidably connected to the transmission rod.

第一传动齿轮,固接在滑动轴的一端,第一传动齿轮传动连接在转动壳内部中间位置处。The first transmission gear is fixed to one end of the sliding shaft and is transmission-connected to the middle position inside the rotating shell.

第二传动齿轮,固接在滑动轴的另一端,第二传动齿轮传动连接在转动盘远离驱动电机的一侧。The second transmission gear is fixedly connected to the other end of the sliding shaft, and the second transmission gear is transmission-connected to the side of the rotating disk away from the driving motor.

连接环,固接在滑动轴上,电动气缸的动力输出端滑动安装在连接环内。The connecting ring is fixedly connected to the sliding shaft, and the power output end of the electric cylinder is slidably installed in the connecting ring.

进一步优选为,转动壳内部一侧的中间位置处设置有与第一传动齿轮位置相对应规格相适配的第一连接齿槽,转动盘另一侧的中间位置处设置有与第二传动齿轮位置相对应规格相适配的第二连接齿槽。Further preferably, a first connecting tooth groove matching the specifications corresponding to the first transmission gear position is provided at the middle position on one side of the rotating shell, and a second connecting tooth groove matching the specifications corresponding to the second transmission gear position is provided at the middle position on the other side of the rotating disk.

进一步优选为,第一安装座表面沿圆周方向等间距固接有支撑块,支撑块的端部均设置有滑动轮。Further preferably, support blocks are fixedly connected to the surface of the first mounting seat at equal intervals along the circumferential direction, and sliding wheels are arranged at the ends of the support blocks.

进一步优选为,安装盘边缘靠近滚刷筒位置处均设置有储料箱,滚刷筒的底部设置在储料箱上部的开口位置处。Further preferably, a material storage box is arranged at the edge of the mounting plate near the roller brush cylinder, and the bottom of the roller brush cylinder is arranged at the opening position of the upper part of the material storage box.

进一步优选为,安装盘远离第二安装座的一端设置有固定座,固定座上固接有电动机。Further preferably, a fixing seat is provided at one end of the mounting plate away from the second mounting seat, and the motor is fixedly connected to the fixing seat.

进一步优选为,电动机的动力输出端设置有驱动杆,驱动杆带动安装盘转动。Further preferably, a driving rod is provided at the power output end of the motor, and the driving rod drives the mounting plate to rotate.

进一步优选为,转动壳表面靠近第一安装座一侧设置有储液箱,多个喷头和储液箱之间管道连接。Further preferably, a liquid storage tank is arranged on one side of the rotating shell surface close to the first mounting seat, and the plurality of nozzles are connected to the liquid storage tank through pipes.

与现有技术相比,本发明具有以下优点:通过设置的第一安装座、安装组件和喷头之间的相互配合,其中,喷头在转动壳在的边缘位置处等间距设置,且喷头呈锐角安装在安装组件的边缘位置处,进而在对液压管道内部进行清洗时,驱动电机通过转动壳带动喷头在液压管道内部转动,进而喷头喷出的水流在液压管道内壁呈螺旋状转动,增加液体在液压管道内壁的清洗面积,提高对液压管道内部的清洗效果,且第一安装座通过稳定板和第二安装座、安装盘、烘干组件以及滚刷筒之间的相互配合,进而在对液压管道进行清洗遇到转弯位置处时,第一安装座和第二安装座之间发生相对转动,进而提高第一安装座和安装组件在液压管道内部的实用性,同时安装盘带动烘干组件和滚刷筒转动,烘干组件对清洗过后的液压管道内部进行烘干,滚刷筒对液压管道内部进行涂抹修复材料,进一步提高液压管道的清洁效果。Compared with the prior art, the present invention has the following advantages: through the mutual cooperation between the first mounting seat, the mounting assembly and the nozzle, wherein the nozzles are arranged at equal intervals at the edge position of the rotating shell, and the nozzles are installed at the edge position of the mounting assembly at an acute angle, and then when the inside of the hydraulic pipeline is cleaned, the driving motor drives the nozzle to rotate inside the hydraulic pipeline through the rotating shell, and then the water flow sprayed by the nozzle rotates in a spiral shape on the inner wall of the hydraulic pipeline, thereby increasing the cleaning area of the liquid on the inner wall of the hydraulic pipeline and improving the cleaning effect on the inside of the hydraulic pipeline, and the first mounting seat cooperates with the second mounting seat, the mounting plate, the drying assembly and the roller brush drum through the stabilizing plate, and then when the hydraulic pipeline encounters a turning position during cleaning, the first mounting seat and the second mounting seat rotate relative to each other, thereby improving the practicality of the first mounting seat and the mounting assembly inside the hydraulic pipeline, and at the same time, the mounting plate drives the drying assembly and the roller brush drum to rotate, the drying assembly dries the inside of the hydraulic pipeline after cleaning, and the roller brush drum applies repair material to the inside of the hydraulic pipeline, thereby further improving the cleaning effect of the hydraulic pipeline.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

图1为本实施例的结构示意图;FIG1 is a schematic structural diagram of the present embodiment;

图2为本实施例的剖视结构示意图;FIG2 is a schematic cross-sectional view of the structure of this embodiment;

图3为图2中A处放大示意图;FIG3 is an enlarged schematic diagram of point A in FIG2 ;

图4为本实施例的喷头安装结构示意图;FIG4 is a schematic diagram of the nozzle installation structure of this embodiment;

图5为本实施例的传动组件结构示意图;FIG5 is a schematic diagram of the structure of the transmission assembly of this embodiment;

图6为本实施例的喷头连接结构示意图;FIG6 is a schematic diagram of the nozzle connection structure of this embodiment;

图7为本实施例的安装盘结构示意图。FIG. 7 is a schematic diagram of the structure of the installation disk of this embodiment.

附图标记:1、第一安装座;2、安装组件;21、驱动电机;22、转动壳;23、转动盘;24、传动组件;241、滑动轴;242、第一传动齿轮;243、连接环;244、第二传动齿轮;25、电动气缸;26、连接杆;27、安装块;28、清洁刷;3、喷头;4、支撑块;5、稳定板;6、第二安装座;7、安装盘;8、烘干组件;9、滚刷筒;10、储料箱;11、固定座;12、电动机;13、储液箱。Figure numerals: 1. first mounting seat; 2. mounting assembly; 21. driving motor; 22. rotating shell; 23. rotating disk; 24. transmission assembly; 241. sliding shaft; 242. first transmission gear; 243. connecting ring; 244. second transmission gear; 25. electric cylinder; 26. connecting rod; 27. mounting block; 28. cleaning brush; 3. nozzle; 4. supporting block; 5. stabilizing plate; 6. second mounting seat; 7. mounting disk; 8. drying assembly; 9. roller brush; 10. storage box; 11. fixing seat; 12. motor; 13. liquid storage tank.

具体实施方式DETAILED DESCRIPTION

现有技术中公开的一种管道内壁清理装置,包括:驱动机构和清理机构;所述驱动机构包括涡轮基体,沿着所述涡轮基体的圆周方向均匀设置有多个导流片,多个所述导流片沿着所述涡轮基体的延伸方向呈螺旋设置,任意相邻的两个所述导流片之间形成螺旋导流槽;所述清理机构与所述涡轮基体的一端连接,所述涡轮基体和所述清理机构用于容置于管道内部,且沿着所述清理机构的圆周方向的外侧壁与所述管道内壁抵接,所述涡轮基体用于通过所述导流槽在所述管道内部液体动力驱动下转动,以带动所述清理机构相对于所述管道转动,以使所述清理机构对所述管道内壁进行清理。通过将清理机构和驱动机构伸入至管道内部,并且在涡轮基体的一端输送液体,其中涡轮基体通过导流槽在管道内部液体动力驱动下进行转动,从而能够带动清理机构相对于管道转动,利用清理机构能够对管道内壁进行清理,但是在使用上述装置时,利用液体带动清理机构相对于管道的转动效果较差,进而清理机构在管道内部的清理效果较差。A pipeline inner wall cleaning device disclosed in the prior art includes: a driving mechanism and a cleaning mechanism; the driving mechanism includes a turbine base, and a plurality of guide vanes are evenly arranged along the circumferential direction of the turbine base, and the plurality of guide vanes are spirally arranged along the extension direction of the turbine base, and a spiral guide groove is formed between any two adjacent guide vanes; the cleaning mechanism is connected to one end of the turbine base, and the turbine base and the cleaning mechanism are used to be accommodated inside the pipeline, and the outer side wall along the circumferential direction of the cleaning mechanism abuts against the inner wall of the pipeline, and the turbine base is used to rotate under the driving force of the liquid inside the pipeline through the guide groove, so as to drive the cleaning mechanism to rotate relative to the pipeline, so that the cleaning mechanism cleans the inner wall of the pipeline. The cleaning mechanism and the driving mechanism are extended into the interior of the pipeline, and liquid is transported at one end of the turbine base, wherein the turbine base is driven to rotate by the liquid power inside the pipeline through the guide groove, thereby driving the cleaning mechanism to rotate relative to the pipeline, and the inner wall of the pipeline can be cleaned by the cleaning mechanism. However, when using the above device, the effect of using liquid to drive the cleaning mechanism to rotate relative to the pipeline is poor, and thus the cleaning effect of the cleaning mechanism inside the pipeline is poor.

所以,在使用上述装置时,在管道内部的转动效果较差,进而对管道内部的清理效果较差。Therefore, when the above device is used, the rotation effect inside the pipeline is poor, and thus the cleaning effect on the inside of the pipeline is poor.

针对上述技术问题,本申请进行了以下设计与构想:为了解决现有技术中存在的问题,设想通过某种旋转机构比现有技术中液体动力驱动清理机构转动具有更好的旋转效果,实现提高清洁管道内部的目的。In response to the above technical problems, the present application has made the following designs and ideas: In order to solve the problems existing in the prior art, it is envisaged that a certain rotating mechanism can have a better rotation effect than the liquid power driven cleaning mechanism in the prior art, thereby achieving the purpose of improving the cleaning inside the pipeline.

以下结合附图1至图7对本发明作进一步详细介绍。The present invention will be further described in detail below in conjunction with Figures 1 to 7.

一种液压管道冲洗装置,如图1和图2所示,包括第一安装座1和第二安装座6,第一安装座1和第二安装座6之间通过稳定板5铰接连接,第一安装座1远离第二安装座6的一端转动安装有安装组件2,安装组件2的边缘位置处沿圆周方向等间距设置有喷头3,具体地,喷头3呈锐角安装在安装组件2的边缘位置处,安装组件2用于带动多个喷头3在液压管道内壁转动,多个喷头3对液压管道内壁清洗,安装组件2包括固接在第一安装座1内部的驱动电机21,进一步地,驱动电机21外接电源和控制面板,驱动电机21的动力输出端设置有传动杆,传动杆上滑动连接有传动组件24,第一安装座1的端部转动安装有转动壳22,且传动杆延伸至转动壳22内部,进一步地,转动壳22远离第一安装座1的端面可以为梭形,转动壳22的内部转动安装有转动盘23,第二安装座6远离第一安装座1的一端转动安装有安装盘7,安装盘7的边缘位置处等间距设置有烘干组件8,示例性地,烘干组件8为烘干灯并外接电源和控制面板,安装盘7带动烘干组件8对液压管道内壁进行烘干,安装盘7边缘位置处沿圆周方向等间距设置有滚刷筒9,安装盘7带动滚刷筒9对液压管道内壁进行涂抹修复材料,具体地,滚刷筒9呈锐角安装在安装盘7边缘位置处,且喷头3和滚刷筒9的安装方向平行,进一步地,安装盘7远离稳定板5的一端设置有推送机构,推送机构将安装组件2和安装盘7依次送入液压管道内部,具体地,推送机构为现有技术,本申请对此不进行限定,示例性地,推送机构为电动推动杆。A hydraulic pipeline flushing device, as shown in Figures 1 and 2, includes a first mounting seat 1 and a second mounting seat 6, the first mounting seat 1 and the second mounting seat 6 are hingedly connected by a stabilizing plate 5, a mounting assembly 2 is rotatably mounted on one end of the first mounting seat 1 away from the second mounting seat 6, and nozzles 3 are arranged at equal intervals in the circumferential direction at the edge position of the mounting assembly 2. Specifically, the nozzles 3 are installed at the edge position of the mounting assembly 2 at an acute angle, and the mounting assembly 2 is used to drive multiple nozzles 3 to rotate on the inner wall of the hydraulic pipeline, and the multiple nozzles 3 clean the inner wall of the hydraulic pipeline. The mounting assembly 2 includes a driving motor 21 fixedly connected to the inside of the first mounting seat 1. Furthermore, the driving motor 21 is externally connected to a power supply and a control panel. A transmission rod is provided at the power output end of the driving motor 21, and a transmission assembly 24 is slidably connected to the transmission rod. A rotating shell 22 is rotatably mounted on the end of the first mounting seat 1, and the transmission rod extends to the inside of the rotating shell 22. Further, the rotating shell 22 is away from the first mounting seat The end face of the mounting seat 1 can be shuttle-shaped, and a rotating disk 23 is rotatably installed inside the rotating shell 22. A mounting disk 7 is rotatably installed at one end of the second mounting seat 6 away from the first mounting seat 1. Drying components 8 are arranged at equal intervals at the edge of the mounting disk 7. Exemplarily, the drying components 8 are drying lamps and are externally connected to a power supply and a control panel. The mounting disk 7 drives the drying components 8 to dry the inner wall of the hydraulic pipeline. Roller brush cylinders 9 are arranged at equal intervals along the circumferential direction at the edge of the mounting disk 7. The mounting disk 7 drives the roller brush cylinder 9 to apply repair material to the inner wall of the hydraulic pipeline. Specifically, the roller brush cylinder 9 is installed at an acute angle at the edge of the mounting disk 7, and the installation directions of the nozzle 3 and the roller brush cylinder 9 are parallel. Further, a pushing mechanism is provided at one end of the mounting disk 7 away from the stabilizing plate 5. The pushing mechanism sends the mounting component 2 and the mounting disk 7 into the interior of the hydraulic pipeline in sequence. Specifically, the pushing mechanism is a prior art, and the present application does not limit it. Exemplarily, the pushing mechanism is an electric push rod.

通过设置的第一安装座1、安装组件2和喷头3之间的相互配合,其中,喷头3在转动壳22在的边缘位置处等间距设置,且喷头3呈锐角安装在安装组件2的边缘位置处,进而在对液压管道内部进行清洗时,驱动电机21通过转动壳22带动喷头3在液压管道内部转动,进而喷头3喷出的水流在液压管道内壁呈螺旋状转动,增加液体在液压管道内壁的清洗面积,提高对液压管道内部的清洗效果,且第一安装座1通过稳定板5和第二安装座6、安装盘7、烘干组件8以及滚刷筒9之间的相互配合,进而在对液压管道进行清洗遇到转弯位置处时,第一安装座1和第二安装座6之间发生相对转动,进而提高第一安装座1和安装组件2在液压管道内部的实用性,同时安装盘7带动烘干组件8和滚刷筒9转动,烘干组件8对清洗过后的液压管道内部进行烘干,滚刷筒9对液压管道内部进行涂抹修复材料,进一步提高液压管道的清洁效果。By the mutual cooperation between the first mounting seat 1, the mounting assembly 2 and the nozzle 3, wherein the nozzle 3 is arranged at equal intervals at the edge position of the rotating shell 22, and the nozzle 3 is installed at the edge position of the mounting assembly 2 at an acute angle, and then when the inside of the hydraulic pipeline is cleaned, the driving motor 21 drives the nozzle 3 to rotate inside the hydraulic pipeline through the rotating shell 22, and then the water flow sprayed by the nozzle 3 rotates in a spiral shape on the inner wall of the hydraulic pipeline, thereby increasing the cleaning area of the liquid on the inner wall of the hydraulic pipeline and improving the cleaning effect of the inside of the hydraulic pipeline. The first mounting seat 1 cooperates with the stabilizing plate 5 and the second mounting seat 6, the mounting disk 7, the drying assembly 8 and the roller brush 9, and then when the hydraulic pipeline is cleaned and encounters a turning position, the first mounting seat 1 and the second mounting seat 6 rotate relative to each other, thereby improving the practicality of the first mounting seat 1 and the mounting assembly 2 inside the hydraulic pipeline. At the same time, the mounting disk 7 drives the drying assembly 8 and the roller brush 9 to rotate, the drying assembly 8 dries the inside of the hydraulic pipeline after cleaning, and the roller brush 9 applies repair material to the inside of the hydraulic pipeline, thereby further improving the cleaning effect of the hydraulic pipeline.

具体地,如图3、图4、图5和图6所示,安装组件2还包括:Specifically, as shown in Figures 3, 4, 5 and 6, the installation component 2 also includes:

电动气缸25,数量为多个,沿圆周方向等间距固接在转动壳22内部,电动气缸25用于带动传动组件24在传动杆上移动,进一步地,转动壳22内部设置有与传动组件24活动轨迹相适配的活动槽,且多个电动气缸25均固接在活动槽内,更进一步地,多个电动气缸25外接电源和控制面板。There are multiple electric cylinders 25, which are fixed inside the rotating shell 22 at equal intervals along the circumferential direction. The electric cylinder 25 is used to drive the transmission component 24 to move on the transmission rod. Furthermore, a movable groove that is compatible with the movable trajectory of the transmission component 24 is provided inside the rotating shell 22, and multiple electric cylinders 25 are fixed in the movable groove. Furthermore, multiple electric cylinders 25 are externally connected to a power supply and a control panel.

连接杆26,数量为多个,沿圆周方向等间距铰接安装在转动盘23的边缘位置处。There are multiple connecting rods 26 , which are hingedly mounted at the edge of the rotating disk 23 at equal intervals along the circumferential direction.

安装块27,数量为多个,沿圆周方向等间距铰接安装在转动壳22的边缘位置处,连接杆26的顶端铰接连接在安装块27的底部,喷头3安装在安装块27上。There are multiple mounting blocks 27 , which are hingedly mounted at the edge of the rotating shell 22 at equal intervals along the circumferential direction. The top end of the connecting rod 26 is hingedly connected to the bottom of the mounting block 27 , and the nozzle 3 is mounted on the mounting block 27 .

清洁刷28,固接在转动壳22边缘远离安装块27的一侧。The cleaning brush 28 is fixedly connected to a side of the edge of the rotating shell 22 away from the mounting block 27 .

进一步地,连接杆26和安装块27的安装数量相等,电动气缸25带动传动组件24一侧传动连接在转动盘23位置处时,传动组件24另一侧与转动壳22内部内部脱离,驱动电机21通过传动杆、传动组件24带动转动盘23转动,进而转动盘23通过连接杆26带动安装块27转动,从而使得安装块27带动喷头3移出转动壳22进行喷洒,当反向转动时,安装块27带动喷头3转动至转动壳22内部。Furthermore, the number of connecting rods 26 and mounting blocks 27 installed is equal. When the electric cylinder 25 drives one side of the transmission assembly 24 to be connected to the rotating disk 23, the other side of the transmission assembly 24 is disengaged from the inside of the rotating shell 22. The driving motor 21 drives the rotating disk 23 to rotate through the transmission rod and the transmission assembly 24, and then the rotating disk 23 drives the mounting block 27 to rotate through the connecting rod 26, so that the mounting block 27 drives the nozzle 3 to move out of the rotating shell 22 for spraying. When rotating in the opposite direction, the mounting block 27 drives the nozzle 3 to rotate to the inside of the rotating shell 22.

具体地,如图2所示,转动壳22的边缘位置处设置有与安装块27位置相对应活动轨迹相适配的开口。Specifically, as shown in FIG. 2 , an opening matching the movable track corresponding to the position of the mounting block 27 is provided at the edge of the rotating shell 22 .

进一步地,在对液压管道内部进行清洗时,安装块27带动喷头3移出转动壳22进行喷洒,当反向转动时,安装块27带动喷头3转动至转动壳22内部,更进一步地,当在直行的液压管道内部清洗时,喷头3在转动壳22外部,当在液压管道内部进行转弯时,喷头3收缩在转动壳22内部,此时转动壳22在液压管道内部转弯,当驶过弯道后,喷头3重新转出转动壳22内部,对液压管道内部进行清洗。Furthermore, when cleaning the inside of the hydraulic pipeline, the mounting block 27 drives the nozzle 3 to move out of the rotating shell 22 for spraying. When rotating in the opposite direction, the mounting block 27 drives the nozzle 3 to rotate to the inside of the rotating shell 22. Furthermore, when cleaning the inside of a straight hydraulic pipeline, the nozzle 3 is outside the rotating shell 22. When turning inside the hydraulic pipeline, the nozzle 3 shrinks inside the rotating shell 22. At this time, the rotating shell 22 turns inside the hydraulic pipeline. After passing the bend, the nozzle 3 rotates out of the rotating shell 22 again to clean the inside of the hydraulic pipeline.

具体地,如图5所示,传动组件24包括有:Specifically, as shown in FIG5 , the transmission assembly 24 includes:

滑动轴241,滑动连接在传动杆上,进一步地,传动杆的圆周方向等间距设置有凸块,滑动轴241的内侧壁设置有与凸块位置相对应活动轨迹相适配的凹槽,更进一步地,滑动轴241通过凹槽卡接在凸块上,进而传动杆通过凸块带动滑动轴241转动。The sliding shaft 241 is slidably connected to the transmission rod. Furthermore, protrusions are arranged at equal intervals in the circumferential direction of the transmission rod, and the inner wall of the sliding shaft 241 is provided with grooves adapted to the movable trajectory corresponding to the position of the protrusions. Furthermore, the sliding shaft 241 is clamped on the protrusions through the grooves, and then the transmission rod drives the sliding shaft 241 to rotate through the protrusions.

第一传动齿轮242,固接在滑动轴241的一端,第一传动齿轮242传动连接在转动壳22内部中间位置处,进一步地,第一传动齿轮242的形状为锥形齿轮。The first transmission gear 242 is fixed to one end of the sliding shaft 241 . The first transmission gear 242 is transmission-connected to the middle position inside the rotating shell 22 . Furthermore, the first transmission gear 242 is in the shape of a bevel gear.

第二传动齿轮244,固接在滑动轴241的另一端,第二传动齿轮244传动连接在转动盘23远离驱动电机21的一侧,进一步地,第二传动齿轮244的形状为锥形齿轮。The second transmission gear 244 is fixed to the other end of the sliding shaft 241 . The second transmission gear 244 is transmission-connected to a side of the rotating disk 23 away from the driving motor 21 . Furthermore, the second transmission gear 244 is in the shape of a bevel gear.

连接环243,固接在滑动轴241上,电动气缸25的动力输出端滑动安装在连接环243内。The connecting ring 243 is fixedly connected to the sliding shaft 241 , and the power output end of the electric cylinder 25 is slidably installed in the connecting ring 243 .

进一步地,当传动杆带动滑动轴241转动时,滑动轴241通过连接环243在电动气缸25的动力输出端滑动,进而滑动轴241转动对电动气缸25的动力输出端难以产生影响,提高电动气缸25动力输出端与连接环243连接的稳定。Furthermore, when the transmission rod drives the sliding shaft 241 to rotate, the sliding shaft 241 slides on the power output end of the electric cylinder 25 through the connecting ring 243, and the rotation of the sliding shaft 241 is unlikely to affect the power output end of the electric cylinder 25, thereby improving the stability of the connection between the power output end of the electric cylinder 25 and the connecting ring 243.

具体地,如图2所示,转动壳22内部一侧的中间位置处设置有与第一传动齿轮242位置相对应规格相适配的第一连接齿槽,转动盘23另一侧的中间位置处设置有与第二传动齿轮244位置相对应规格相适配的第二连接齿槽。Specifically, as shown in Figure 2, a first connecting tooth groove that is adapted to the specifications corresponding to the position of the first transmission gear 242 is provided at the middle position on one side of the rotating shell 22, and a second connecting tooth groove that is adapted to the specifications corresponding to the position of the second transmission gear 244 is provided at the middle position on the other side of the rotating disk 23.

进一步地,当电动气缸25收缩时,电动气缸25的动力输出端通过连接环243带动滑动轴241在传动杆上移动至远离驱动电机21一端时,进而第一传动齿轮242传动连接在转动壳22内部的第一连接齿槽内,从而提高滑动轴241和转动壳22传动连接的稳定性,继而当滑动轴241转动时,转动壳22发生转动,当电动气缸25的动力输出端通过连接环243带动滑动轴241在传动杆上移动至靠近驱动电机21一端时,第二传动齿轮244传动连接在转动盘23的第二连接齿槽位置处,进而滑动轴241转动时,滑动轴241带动转动盘23转动。Furthermore, when the electric cylinder 25 contracts, the power output end of the electric cylinder 25 drives the sliding shaft 241 to move on the transmission rod to an end away from the drive motor 21 through the connecting ring 243, and then the first transmission gear 242 is transmission-connected to the first connecting tooth groove inside the rotating shell 22, thereby improving the stability of the transmission connection between the sliding shaft 241 and the rotating shell 22, and then when the sliding shaft 241 rotates, the rotating shell 22 rotates, and when the power output end of the electric cylinder 25 drives the sliding shaft 241 to move on the transmission rod to an end close to the drive motor 21 through the connecting ring 243, the second transmission gear 244 is transmission-connected to the second connecting tooth groove position of the rotating disk 23, and then when the sliding shaft 241 rotates, the sliding shaft 241 drives the rotating disk 23 to rotate.

具体地,如图1所示,第一安装座1表面沿圆周方向等间距固接有支撑块4,支撑块4的端部均设置有滑动轮。Specifically, as shown in FIG. 1 , support blocks 4 are fixedly connected to the surface of the first mounting seat 1 at equal intervals along the circumferential direction, and sliding wheels are arranged at the ends of the support blocks 4 .

进一步地,第一安装座1和安装组件2通过支撑块4滑动在液压管道内部,更进一步地,提高第一安装座1和安装组件2在液压管道内部移动的稳定性。Furthermore, the first mounting seat 1 and the mounting assembly 2 slide inside the hydraulic pipeline via the support block 4, and further, the stability of the first mounting seat 1 and the mounting assembly 2 moving inside the hydraulic pipeline is improved.

具体地,如图1所示,安装盘7边缘靠近滚刷筒9位置处均设置有储料箱10,滚刷筒9的底部设置在储料箱10上部的开口位置处,进一步地,当安装盘7转动储料箱10上部的开口向下时,储料箱10内部的涂料经开口流动至滚刷筒9上,进而当安装盘7转动时带动滚刷筒9对液压管道内部进行涂抹。Specifically, as shown in Figure 1, a material storage box 10 is provided at the edge of the mounting plate 7 near the roller brush drum 9, and the bottom of the roller brush drum 9 is arranged at the opening position of the upper part of the material storage box 10. Furthermore, when the mounting plate 7 rotates with the opening of the upper part of the material storage box 10 downward, the paint inside the material storage box 10 flows through the opening to the roller brush drum 9, and then when the mounting plate 7 rotates, it drives the roller brush drum 9 to paint the inside of the hydraulic pipeline.

具体地,如图7所示,安装盘7远离第二安装座6的一端设置有固定座11,具体地,推送机构通过固定座11将安装盘7推送至液压管道内部,固定座11上固接有电动机12,电动机12的动力输出端设置有驱动杆,驱动杆带动安装盘7转动,进一步地,电动机12外接电源和控制面板。Specifically, as shown in Figure 7, a fixed seat 11 is provided at one end of the mounting disk 7 away from the second mounting seat 6. Specifically, the pushing mechanism pushes the mounting disk 7 into the hydraulic pipeline through the fixed seat 11. A motor 12 is fixedly connected to the fixed seat 11. A driving rod is provided at the power output end of the motor 12. The driving rod drives the mounting disk 7 to rotate. Furthermore, the motor 12 is externally connected to a power supply and a control panel.

进一步地,当安装组件2和安装盘7均在液压管道内部时,电动机12启动,电动机12带动安装盘7转动,从而安装盘7带动烘干组件8对液压管道内壁进行烘干,安装盘7带动滚刷筒9对液压管道内壁进行涂抹修复材料,当安装盘7转动储料箱10上部的开口向下时,储料箱10内部的涂料经开口流动至滚刷筒9上,进而当安装盘7转动时带动滚刷筒9对液压管道内部进行涂抹。Furthermore, when the mounting assembly 2 and the mounting disk 7 are both inside the hydraulic pipe, the motor 12 is started, and the motor 12 drives the mounting disk 7 to rotate, so that the mounting disk 7 drives the drying assembly 8 to dry the inner wall of the hydraulic pipe, and the mounting disk 7 drives the roller brush 9 to apply repair material to the inner wall of the hydraulic pipe. When the mounting disk 7 rotates with the opening of the upper part of the storage box 10 downward, the paint inside the storage box 10 flows through the opening to the roller brush 9, and then when the mounting disk 7 rotates, it drives the roller brush 9 to apply the inside of the hydraulic pipe.

具体地,如图1所示,转动壳22表面靠近第一安装座1一侧设置有储液箱13,多个喷头3和储液箱13之间管道连接。Specifically, as shown in FIG. 1 , a liquid storage tank 13 is provided on a side of the surface of the rotating shell 22 close to the first mounting seat 1 , and a plurality of nozzles 3 and the liquid storage tank 13 are connected by pipelines.

工作原理How it works

在进行使用时,现有的推送机构将装置依次送进待清洗的液压管道内部,当第一安装座1和安装组件2伸入液压管道内部时,支撑块4将第一安装座1和安装组件2在液压管道内部支撑,电动气缸25推动,电动气缸25的动力输出端通过连接环243带动滑动轴241在传动杆上移动至靠近驱动电机21一端时,第二传动齿轮244传动连接在转动盘23的第二连接齿槽位置处,此时驱动电机21启动,驱动电机21通过传动杆带动滑动轴241转动,进而滑动轴241通过第二传动齿轮244带动转动盘23转动,转动盘23通过连接杆26带动安装块27转动,从而使得安装块27带动喷头3移出转动壳22,随后,电动气缸25收缩,电动气缸25的动力输出端通过连接环243带动滑动轴241在传动杆上移动至远离驱动电机21一端时,进而第一传动齿轮242传动连接在转动壳22内部的第一连接齿槽内,第二传动齿轮244脱离在转动盘23的第二连接齿槽位置处,此时驱动电机21启动,驱动电机21通过传动杆带动滑动轴241转动,进而滑动轴241通过第一传动齿轮242带动转动壳22转动,从而使得转动壳22带动清洁刷28在液压管道内部转动,清洁刷28对液压管道内部进行清刷,同时转动壳22带动喷头3转动,多个喷头3喷出的液体呈螺旋状清洗液压管道内部。When in use, the existing pushing mechanism sends the device into the hydraulic pipeline to be cleaned in sequence. When the first mounting seat 1 and the mounting assembly 2 extend into the hydraulic pipeline, the support block 4 supports the first mounting seat 1 and the mounting assembly 2 in the hydraulic pipeline, and the electric cylinder 25 pushes. The power output end of the electric cylinder 25 drives the sliding shaft 241 to move on the transmission rod to one end close to the drive motor 21 through the connecting ring 243. The second transmission gear 244 is connected to the second connecting tooth groove position of the rotating disk 23. At this time, the drive motor 21 is started, and the drive motor 21 drives the sliding shaft 241 to rotate through the transmission rod, and then the sliding shaft 241 drives the rotating disk 23 to rotate through the second transmission gear 244. The rotating disk 23 drives the mounting block 27 to rotate through the connecting rod 26, so that the mounting block 27 drives the nozzle 3 to move out The rotating shell 22 is rotated, and then the electric cylinder 25 contracts. The power output end of the electric cylinder 25 drives the sliding shaft 241 to move on the transmission rod to an end away from the drive motor 21 through the connecting ring 243, and then the first transmission gear 242 is transmission-connected to the first connecting tooth groove inside the rotating shell 22, and the second transmission gear 244 is disengaged from the second connecting tooth groove position of the rotating disk 23. At this time, the drive motor 21 is started, and the drive motor 21 drives the sliding shaft 241 to rotate through the transmission rod, and then the sliding shaft 241 drives the rotating shell 22 to rotate through the first transmission gear 242, so that the rotating shell 22 drives the cleaning brush 28 to rotate inside the hydraulic pipeline, and the cleaning brush 28 cleans the inside of the hydraulic pipeline. At the same time, the rotating shell 22 drives the nozzle 3 to rotate, and the liquid sprayed from the multiple nozzles 3 cleans the inside of the hydraulic pipeline in a spiral shape.

当在液压管道内部移动遇到转弯位置时,反向操作上述步骤,多个喷头3收纳在转动壳22内部,此时推送机构继续推动,第一安装座1和转动壳22通过支撑块4在液压管道内部移动,第一安装座1和转动壳22通过稳定板5与安装盘7之间发生转动,当第一安装座1和转动壳22转过弯角后,多个喷头3再次转出转动壳22内部对液压管道内壁进行清洗。When encountering a turning position while moving inside the hydraulic pipeline, the above steps are performed in reverse order, and the multiple nozzles 3 are stored inside the rotating shell 22. At this time, the pushing mechanism continues to push, and the first mounting seat 1 and the rotating shell 22 move inside the hydraulic pipeline through the support block 4. The first mounting seat 1 and the rotating shell 22 rotate between the stabilizing plate 5 and the mounting disk 7. After the first mounting seat 1 and the rotating shell 22 turn the corner, the multiple nozzles 3 rotate out of the rotating shell 22 again to clean the inner wall of the hydraulic pipeline.

推送机构持续推动时,安装盘7进入液压管道内,此时,电动机12启动,电动机12通过驱动杆带动安装盘7转动,从而安装盘7带动烘干组件8和滚刷筒9转动,滚刷筒9抵接在液压管道的内壁,烘干组件8对清洗过后的液压管道内部进行烘干,当安装盘7转动储料箱10上部的开口向下时,储料箱10内部的涂料经开口流动至滚刷筒9上,进而当安装盘7转动时带动滚刷筒9对液压管道内部进行涂抹修复材料。When the pushing mechanism continues to push, the mounting disc 7 enters the hydraulic pipeline. At this time, the motor 12 is started, and the motor 12 drives the mounting disc 7 to rotate through the driving rod, so that the mounting disc 7 drives the drying assembly 8 and the roller brush 9 to rotate. The roller brush 9 abuts against the inner wall of the hydraulic pipeline, and the drying assembly 8 dries the inside of the hydraulic pipeline after cleaning. When the mounting disc 7 rotates and the opening of the upper part of the storage box 10 is downward, the paint inside the storage box 10 flows through the opening to the roller brush 9, and then when the mounting disc 7 rotates, it drives the roller brush 9 to apply the repair material to the inside of the hydraulic pipeline.

本具体实施例仅仅是对发明的解释,其并不是对本发明的限制,本领域技术人员在阅读完本说明书后可以根据需要对本实施例做出没有创造性贡献的修改,但只要在本发明的保护范围内都受到专利法的保护。This specific embodiment is merely an explanation of the invention and is not a limitation of the invention. After reading this specification, those skilled in the art may make non-creative modifications to this embodiment as needed. However, as long as they are within the scope of protection of the invention, they are protected by patent law.

Claims (10)

1. The utility model provides a hydraulic pipeline flushing device, includes first mount pad (1) and second mount pad (6), first mount pad (1) with connect through stabilizer blade (5) hinge between second mount pad (6), a serial communication port, first mount pad (1) keep away from one end rotation of second mount pad (6) is installed and is installed installation component (2), the edge of installation component (2) is located along equidistant shower nozzle (3) that are provided with of circumference direction, installation component (2) are used for driving a plurality of shower nozzle (3) are at hydraulic pipeline inner wall rotation, a plurality of shower nozzle (3) washs hydraulic pipeline inner wall, installation component (2) are including the rigid coupling be in driving motor (21) of first mount pad (1) inside, driving motor (21) power take off end is provided with the transfer line, sliding connection has drive assembly (24) on the transfer line, the tip rotation of first mount pad (1) is installed and is rotated shell (22), just the transfer line extends to rotate shell (22) inside the rotation shell (22), a plurality of shower nozzle (3) are to hydraulic pipeline inner wall cleaning, a plurality of shower nozzle (3) are provided with drive motor (21) inside the drive motor (21), power take off the drive motor (21) is provided with drive plate (24) on the transfer line, drive plate (7) inside the rotation shell (7), the installation plate (7) drives the drying assembly (8) to dry the inner wall of the hydraulic pipeline, the edge of the installation plate (7) is provided with the rolling brush cylinders (9) at equal intervals along the circumferential direction, and the installation plate (7) drives the rolling brush cylinders (9) to smear repairing materials on the inner wall of the hydraulic pipeline.
2. The hydraulic pipe flushing device according to claim 1, characterized in that the mounting assembly (2) further comprises:
The electric cylinders (25) are multiple in number and fixedly connected inside the rotating shell (22) at equal intervals along the circumferential direction, and the electric cylinders (25) are used for driving the transmission assembly (24) to move on the transmission rod;
The connecting rods (26) are hinged at the edge positions of the rotating disc (23) at equal intervals along the circumferential direction;
A plurality of mounting blocks (27) which are hinged at the edge positions of the rotating shell (22) at equal intervals along the circumferential direction, the top end of the connecting rod (26) is hinged to the bottom of the mounting block (27), and the spray head (3) is mounted on the mounting block (27);
And the cleaning brush (28) is fixedly connected to one side of the edge of the rotating shell (22) away from the mounting block (27).
3. The hydraulic pipe flushing device according to claim 2, characterized in that an opening adapted to the movement path corresponding to the position of the mounting block (27) is provided at the edge position of the rotating shell (22).
4. The hydraulic line flushing device according to claim 2, characterized in that the transmission assembly (24) comprises:
a sliding shaft (241) which is connected to the transmission rod in a sliding manner;
The first transmission gear (242) is fixedly connected to one end of the sliding shaft (241), and the first transmission gear (242) is in transmission connection with the middle position inside the rotating shell (22);
The second transmission gear (244) is fixedly connected to the other end of the sliding shaft (241), and the second transmission gear (244) is in transmission connection with one side of the rotating disc (23) far away from the driving motor (21);
The connecting ring (243) is fixedly connected to the sliding shaft (241), and the power output end of the electric cylinder (25) is slidably arranged in the connecting ring (243).
5. The hydraulic pipe flushing device according to claim 4, wherein a first connecting spline adapted to the specification corresponding to the position of the first transmission gear (242) is provided at an intermediate position of one side inside the rotary case (22), and a second connecting spline adapted to the specification corresponding to the position of the second transmission gear (244) is provided at an intermediate position of the other side of the rotary plate (23).
6. The hydraulic pipeline flushing device according to claim 1, wherein the surface of the first mounting seat (1) is fixedly connected with supporting blocks (4) at equal intervals along the circumferential direction, and the end parts of the supporting blocks (4) are provided with sliding wheels.
7. The hydraulic pipeline flushing device according to claim 1, characterized in that the edges of the mounting plate (7) are provided with a storage box (10) at positions close to the rolling brush cylinder (9), and the bottom of the rolling brush cylinder (9) is arranged at an opening position at the upper part of the storage box (10).
8. The hydraulic pipeline flushing device according to claim 6, characterized in that a fixed seat (11) is arranged at one end of the mounting plate (7) far away from the second mounting seat (6), and a motor (12) is fixedly connected on the fixed seat (11).
9. Hydraulic pipe flushing device according to claim 8, characterized in that the power take-off of the motor (12) is provided with a drive rod which drives the mounting plate (7) in rotation.
10. The hydraulic pipeline flushing device according to claim 1, characterized in that a liquid storage tank (13) is arranged on the surface of the rotating shell (22) close to one side of the first mounting seat (1), and a plurality of spray heads (3) are connected with the liquid storage tank (13) through pipelines.
CN202411136653.2A 2024-08-19 2024-08-19 Hydraulic pipeline flushing device Pending CN118649964A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202411136653.2A CN118649964A (en) 2024-08-19 2024-08-19 Hydraulic pipeline flushing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202411136653.2A CN118649964A (en) 2024-08-19 2024-08-19 Hydraulic pipeline flushing device

Publications (1)

Publication Number Publication Date
CN118649964A true CN118649964A (en) 2024-09-17

Family

ID=92697585

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202411136653.2A Pending CN118649964A (en) 2024-08-19 2024-08-19 Hydraulic pipeline flushing device

Country Status (1)

Country Link
CN (1) CN118649964A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030140942A1 (en) * 2000-03-08 2003-07-31 Raimo Rajala Method and apparatus for treating a moving surface
CN208727851U (en) * 2018-07-23 2019-04-12 泰安联众环保科技有限公司 One kind being used for steel pipe nano anti-corrosive wear-resistant paint painting device
CN217922340U (en) * 2022-08-02 2022-11-29 锐迈耐腐蚀科技(宣城)有限公司 Automatic acid dip pickle of pipeline inner wall
CN117399384A (en) * 2023-11-28 2024-01-16 青岛精锐机械制造有限公司 A ship pipeline cleaning device
CN117427844A (en) * 2023-10-24 2024-01-23 江苏赫佰燕信息科技有限公司 New material pipeline processing apparatus for hydraulic engineering

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20030140942A1 (en) * 2000-03-08 2003-07-31 Raimo Rajala Method and apparatus for treating a moving surface
CN208727851U (en) * 2018-07-23 2019-04-12 泰安联众环保科技有限公司 One kind being used for steel pipe nano anti-corrosive wear-resistant paint painting device
CN217922340U (en) * 2022-08-02 2022-11-29 锐迈耐腐蚀科技(宣城)有限公司 Automatic acid dip pickle of pipeline inner wall
CN117427844A (en) * 2023-10-24 2024-01-23 江苏赫佰燕信息科技有限公司 New material pipeline processing apparatus for hydraulic engineering
CN117399384A (en) * 2023-11-28 2024-01-16 青岛精锐机械制造有限公司 A ship pipeline cleaning device

Similar Documents

Publication Publication Date Title
CN111659678A (en) A kind of pipeline inner wall cleaning device used for interpenetrating pipeline repair
CN115654475B (en) Ash and scale removing device on surface of boiler
CN106583366A (en) Pipeline cleaner
CN116329212A (en) Self-cleaning adjusting ball valve and use method thereof
CN111998165A (en) Novel heat supply pipeline
CN221515501U (en) Heating power pipeline decontamination equipment
CN117847342A (en) Inner wall spraying device for oil-gas pipeline corrosion detection
CN118253543A (en) A pipeline cleaning device based on water spray power
CN118649964A (en) Hydraulic pipeline flushing device
CN215391379U (en) A bullet-type self-rotating pig
CN113145581B (en) Variable-section pipeline descaling device
CN221908888U (en) A cleaning machine for dirt on the inner wall of a petroleum pipeline
CN219442787U (en) Hydraulic engineering pipeline cleaning device
CN211865953U (en) Cleaning assembly of intelligent cleaning robot
CN118080485A (en) A device for cleaning the compaction of a powder transport pipeline
CN223518191U (en) Oil conveying pipeline pigging device
CN223932187U (en) A water conservancy pipeline cleaning device
CN115193842A (en) Pipeline cleaning device
CN221837721U (en) Pipeline cleaning device for municipal water supply and drainage
CN112523057A (en) Road and bridge marking device
CN223172687U (en) Grinding machine cleaning and purifying device for surface treatment of microcrystalline wear-resistant zirconia balls
CN221869609U (en) A cleaning mechanism for in-situ repair of the inner wall of a trenchless pipeline
CN221966317U (en) Pipeline cleaning device for pipeline restoration
CN224151523U (en) A cooling tower sewage discharge device
CN223801129U (en) A pipe cleaning device

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20240917

RJ01 Rejection of invention patent application after publication